Differentiable Rendering Using RGBXY Derivatives and Optimal Transport

Article Properties
  • Language
    English
  • Publication Date
    2022/11/30
  • Indian UGC (journal)
  • Refrences
    52
  • Citations
    2
  • Jiankai Xing Tsinghua University, China
  • Fujun Luan Adobe Research
  • Ling-Qi Yan University of California
  • Xuejun Hu Tsinghua University, China
  • Houde Qian Tsinghua University, China
  • Kun Xu Tsinghua University, China
Abstract
Cite
Xing, Jiankai, et al. “Differentiable Rendering Using RGBXY Derivatives and Optimal Transport”. ACM Transactions on Graphics, vol. 41, no. 6, 2022, pp. 1-13, https://doi.org/10.1145/3550454.3555479.
Xing, J., Luan, F., Yan, L.-Q., Hu, X., Qian, H., & Xu, K. (2022). Differentiable Rendering Using RGBXY Derivatives and Optimal Transport. ACM Transactions on Graphics, 41(6), 1-13. https://doi.org/10.1145/3550454.3555479
Xing, Jiankai, Fujun Luan, Ling-Qi Yan, Xuejun Hu, Houde Qian, and Kun Xu. “Differentiable Rendering Using RGBXY Derivatives and Optimal Transport”. ACM Transactions on Graphics 41, no. 6 (2022): 1-13. https://doi.org/10.1145/3550454.3555479.
Xing J, Luan F, Yan LQ, Hu X, Qian H, Xu K. Differentiable Rendering Using RGBXY Derivatives and Optimal Transport. ACM Transactions on Graphics. 2022;41(6):1-13.
Journal Categories
Science
Mathematics
Instruments and machines
Electronic computers
Computer science
Science
Mathematics
Instruments and machines
Electronic computers
Computer science
Computer software
Technology
Electrical engineering
Electronics
Nuclear engineering
Electronics
Computer engineering
Computer hardware
Refrences
Title Journal Journal Categories Citations Publication Date
Differentiable signed distance function rendering

ACM Transactions on Graphics
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Electronics: Computer engineering. Computer hardware
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science
16 2022
Path-space differentiable rendering of participating media

ACM Transactions on Graphics
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Electronics: Computer engineering. Computer hardware
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science
19 2021
Large steps in inverse rendering of geometry

ACM Transactions on Graphics
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Electronics: Computer engineering. Computer hardware
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science
20 2021
Modular primitives for high-performance differentiable rendering

ACM Transactions on Graphics
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Electronics: Computer engineering. Computer hardware
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science
45 2020
Unbiased warped-area sampling for differentiable rendering

ACM Transactions on Graphics
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Electronics: Computer engineering. Computer hardware
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science
33 2020
Citations
Title Journal Journal Categories Citations Publication Date
A survey of Optimal Transport for Computer Graphics and Computer Vision

Computer Graphics Forum
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Electronics: Computer engineering. Computer hardware
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science
2 2023
Recursive Control Variates for Inverse Rendering

ACM Transactions on Graphics
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Electronics: Computer engineering. Computer hardware
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science
3 2023
Citations Analysis
The category Science: Mathematics: Instruments and machines: Electronic computers. Computer science: Computer software 2 is the most commonly referenced area in studies that cite this article. The first research to cite this article was titled Recursive Control Variates for Inverse Rendering and was published in 2023. The most recent citation comes from a 2023 study titled Recursive Control Variates for Inverse Rendering. This article reached its peak citation in 2023, with 2 citations. It has been cited in 2 different journals. Among related journals, the ACM Transactions on Graphics cited this research the most, with 1 citations. The chart below illustrates the annual citation trends for this article.
Citations used this article by year